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8篇 您的检索式:作者名="Qu Jialin"
    题名 作者 年代 出处 被引量
1Hepatitis B virus regulation of Raf1 promoter activity through activation of transcription factor AP-2α显示文摘Jialin Qu Jianbo Li Ke Chen Dongdong Qin Kai Li Yanrui Sheng Chengcheng Zou Sen Wang Ailong Huang Hua Tang 2013Archives of Virology2013,,4:1
2A broad-notched ultrawideband printed monopole antenna显示文摘QU Shiwei L1 Jialin XUE Quint 2006IEEE Antennas and Wireless Propagation Letters2006,,5:1
3Correlation between hepatitis B virus protein and microRNA processor Drosha in cells expressing HBV显示文摘Min Ren Dongdong Qin Kai Li Jialin Qu Liying Wang Zengchan Wang Ailong Huang Hua Tang 2012Antiviral Research2012,,3:1
4Wideband cavity-backed bowtie antenna with pattern improvement显示文摘Qu Shiwei Li Jialin Xue Quan 2008IEEE Trans on Antennas and Propagation2008,56,12:1
5Synthesis and photovohaic properties of novel solution- processable triphenyl- amine-based dendrimers withsulfonyl-dibenzene cores 显示文摘Li Kunpeng Qu Jialin Xu Bin 2009New Journal of Chemistry2009,33,10:1
6Comparative study of fourteen alkaloids from Uncaria rhynchophylla Hooks and leaves using HPLC-Diode array detection-atmosphericpressure chemical ionization/ms method显示文摘Jialin Qu Tianxing Gong Bin Ma 2012Chem Pharm Bull2012,60,1:1
7Enlisting a Traditional Chinese Medicine to tune the gelation kinetics of a bioactive tissue adhesive for fast hemostasis or minimally invasive therapy显示文摘Gelation kinetics is important in tailoring chemically crosslinked hydrogel-based injectable adhesives for different applications.However,the regulation of gelation rate is usually limited to varying the gel precursor and/or crosslinker concentration,which cannot reach a fine level and inevitably alters the physical properties of hydrogels.Amidation reactions are widely used to synthesize hydrogel adhesives.In this work,we propose a traditional Chinese medicine(Borax)-input strategy to tune the gelation rate of amidation reaction triggered systems.Borax provides an initial basic buffer environment to promote the deprotonation process of amino groups and accelerate this reaction.By using a tissue adhesive model PEG-lysozyme(PEG-LZM),the gelation time can be modulated from seconds to minutes with varying Borax concentrations,while the physical properties remain constant.Moreover,the antibacterial ability can be improved due to the bioactivity of Borax.The hydrogel precursors can be regulated to solidify instantly to close the bleeding wound at emergency.Meanwhile,they can also be customized to match the flowing time in the catheter,thereby facilitating minimally invasive tissue sealing.Because this method is easily operated,we envision Borax adjusted amidation-type hydrogel has a promising prospect in clinical application.Haoqi Tan Dawei Jin Junjie Sun Jialin Song Yao Lu Meng Yin Xin Chen Xue Qu Changsheng Liu 2021Bioactive Materials2021,6,3:0
8Fast and direct identification of SARS-CoV-2 variants via 2D InSe field-effect transistors显示文摘As the COVID-19 pandemic evolves and new variants emerge,the development of more efficient identification approaches of variants is urgent to prevent continuous outbreaks of SARS-CoV-2.Field-effect transistors(FETs)with two-dimensional(2D)materials are viable platforms for the detection of virus nucleic acids(NAs)but cannot yet provide accurate information on NA variations.Herein,2D Indium selenide(InSe)FETs were used to identify SARSCoV-2 variants.The device's mobility and stability were ensured by atomic layer deposition(ALD)of Al_(2)O_(3).The resulting FETs exhibited sub-fM detection limits ranging from 10^(–14)M to 10^(–8)M.The recognition of single-nucleotide variations was achieved within 15 min to enable the fast and direct identification of two core mutations(L452R,R203M)in Delta genomes(p<0.01).Such capability originated from the trap states in oxidized InSe(InSe_(1-x)O_(x))after ALD,resulting in traps-involved carrier transport responsive to the negative charges of NAs.In sum,the proposed approach might highly provide epidemiological information for timely surveillance of the COVID pandemic.Duo Xu Junji Li Yunhai Xiong Han Li Jialin Yang Wenqiang Liu Lianfu Jiang Kairui Qu Tong Zhao Xinyu Shi Shengli Zhang Dan Shan Xiang Chen Haibo Zeng 2023InfoMat2023,5,2:0
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